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MICROSTRUCTURE AND THERMOMECHANICAL FATIGUE BEHAVIOR OF DIRECTIONALLY SOLIDIFIED NI-BASED SUPERALLOYS IN OP CONDITION

机译:定向条件下定向凝固的镍基高温合金的组织和热力学疲劳行为

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Two directionally solidified (DS) Ni-base superalloys, one with the GTD-111 composition and the other with a modified composition derived by numerical simulation, were produced using the Bridgman method. Solution and aging heat treatments were applied to the DS alloys to produce the desired microstructures. Thermomechanical fatigue (TMF) tests were conducted under fully reversed mechanical strain (R = -1) in the temperature range of 538-927°C in laboratory air. The tests were performed under the out-of-phase (OP) loading condition at the mechanical strain range of 0.8-1.5% with multiple specimens tested at each test condition to confirm the trend in fatigue lives. In general, the OP-TMF lives of the DS alloys depended on the applied mechanical strain range as well as the microstructural features of the alloys. By analyzing the fracture surface and longitudinal section of the tested specimens, the TMF lives of the DS alloys tested at mechanical strain ranges lower than 1.5% were found to be primarily affected by the coarse carbides formed in the interdendritic regions. In this study, the main damage mechanism of each alloy under the OP-TMF condition was elucidated in terms of its microstructural features, and recommendations were made to control the microstructures of the DS alloys to achieve enhanced TMF resistance.
机译:使用Bridgman方法制备两个定向凝固的(DS)Ni碱基超合金,一种具有GTD-111组合物的GTD-111组合物,另一种具有通过数值模拟产生的改性组合物。将溶液和老化热处理施加到DS合金中以产生所需的微结构。在实验室空气中的温度范围为538-927°C的温度范围内,在完全反转的机械菌株(R = -1)下进行热机械疲劳(TMF)测试。在每次测试条件下测试的机械应变范围为0.8-1.5%的机械应变范围,在每个测试条件下测试的多个样品进行测试,以确认疲劳生活中的趋势。通常,DS合金的OP-TMF寿命依赖于所施加的机械应变范围以及合金的微观结构特征。通过分析测试样品的断裂表面和纵向部分,发现在低于1.5%的机械应变范围内测试的DS合金的TMF寿命主要受到在中间牢区域中形成的粗碳化物的影响。在该研究中,根据其微观结构特征阐明了每种合金的主要损伤机制,并在其微观结构特征方面阐明,并制备建议以控制DS合金的微观结构,以实现增强的TMF电阻。

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